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    • 13. 发明申请
    • DYNAMIC STREAM INTERLEAVING AND SUB-STREAM BASED DELIVERY
    • 动态流动交互和基于子流的交付
    • US20080256418A1
    • 2008-10-16
    • US12103605
    • 2008-04-15
    • Michael G. LubyPayam PakzadMark WatsonLorenzo VicisanoJourdan J. Clish
    • Michael G. LubyPayam PakzadMark WatsonLorenzo VicisanoJourdan J. Clish
    • H03M13/05G06F11/07
    • H03M13/27H03M13/1102H03M13/15H03M13/1515H03M13/2789H03M13/353H03M13/373H03M13/3761H03M13/6508H04L1/0071
    • A communications system can provide methods of dynamically interleaving streams, including methods for dynamically introducing greater amounts of interleaving as a stream is transmitted independently of any source block structure to spread out losses or errors in the channel over a much larger period of time within the original stream than if interleaving were not introduced, provide superior protection against packet loss or packet corruption when used with FEC coding, provide superior protection against network jitter, and allow content zapping time and the content transition time to be reduced to a minimum and minimal content transition times. Streams may be partitioned into sub-streams, delivering the sub-streams to receivers along different paths through a network and receiving concurrently different sub-streams at a receiver sent from potentially different servers. When used in conjunction with FEC encoding, the methods include delivering portions of an encoding of each source block from potentially different servers.
    • 通信系统可以提供动态交织流的方法,包括用于动态地引入更大量的交织的方法,因为流被独立于任何源块结构传输,以在原始内容中在更大的时间段内分散信道中的丢失或错误 流如果未引入交错,则在与FEC编码一起使用时,提供优异的防丢包或丢包,提供优异的网络抖动保护,并允许内容切换时间,并将内容转换时间减少到最小和最小内容转换 次 流可以被划分成子流,通过网络将子流传送到沿着不同路径的接收器,并且在从潜在的不同服务器发送的接收器处同时接收不同的子流。 当与FEC编码结合使用时,这些方法包括从潜在的不同服务器传送每个源块的编码部分。
    • 18. 发明申请
    • FORWARD ERROR CORRECTION SCHEDULING FOR AN IMPROVED RADIO LINK PROTOCOL
    • 改进的无线电链路协议的前向纠错调度
    • US20120208580A1
    • 2012-08-16
    • US13025934
    • 2011-02-11
    • Michael G. LubyMark WatsonRamin RezaiifarLorenzo Vicisano
    • Michael G. LubyMark WatsonRamin RezaiifarLorenzo Vicisano
    • H04W72/12
    • H04L1/0057H04L1/0009H04L1/18
    • Forward error correction scheduling techniques for an improved radio link protocol used in a wireless communication system, such as EV-DO. In one embodiment scheduling of the generation of repair symbols encoded to be transmitted along with source data is described. In another embodiment acknowledgment messages from a receiver are used to control the trailing edge of the protection window offered by the repair symbols. In another embodiment, non-acknowledgment messages from a receiver are used to control the generation of extra repair symbols. In another embodiment, a length field is used to avoid transmission of padding bytes over the air. In yet another embodiment, a symbol auxiliary field is appended to source symbols to indicate the padding bytes needed for symbol aligning thus avoiding the transmission of padding bytes over the air.
    • 用于诸如EV-DO的无线通信系统中使用的改进的无线电链路协议的前向纠错调度技术。 在一个实施例中,描述了编码为与源数据一起发送的修复符号的生成的调度。 在另一个实施例中,来自接收机的确认消息用于控制由修复符号提供的保护窗口的后沿。 在另一实施例中,来自接收机的非确认消息用于控制额外修复符号的生成。 在另一个实施例中,使用长度字段来避免在空中传输填充字节。 在另一个实施例中,符号辅助字段被附加到源符号以指示符号对齐所需的填充字节,从而避免空中的填充字节的传输。
    • 19. 发明授权
    • HTTP optimization, multi-homing, mobility and priority
    • HTTP优化,多归属,移动性和优先级
    • US08964757B2
    • 2015-02-24
    • US12965698
    • 2010-12-10
    • Mark WatsonLorenzo Vicisano
    • Mark WatsonLorenzo Vicisano
    • H04L12/28H04J3/16G06F15/16H04W76/02H04L12/801H04L29/08H04L29/06H04W88/06
    • H04W76/026H04L47/14H04L67/325H04L69/14H04W76/16H04W88/06
    • Combining parallel Hypertext Transfer Protocol (HTTP) connections and pipelining overcomes an impact of increasing Round Trip Time (RTT) by varying in real time the number of parallel connections and pipelined requests such that the number of outstanding requests is minimal and the link remains fully utilized. Optimal construction and scheduling of requests and connections in an HTTP stack improves page load time and also provides for greater responsiveness to changes in object priorities. Multi-homing and mobility at the application layer for HTTP are addressed. Multi-homing provides for simultaneous use of multiple interfaces, for example WWAN and WLAN interfaces which improves download time, especially in the case that the available bandwidth the interfaces is of the same order of magnitude. Mobility provides for switching connections as the device moves. In combination they provide for smoother mobility. Mobility can be provided this way without server or network support.
    • 并行超文本传输​​协议(HTTP)连接和流水线结合克服了增加往返时间(RTT)的影响,通过实时变化并行连接和流水线请求的数量,使得未完成请求的数量最小并且链路仍然被充分利用 。 HTTP堆栈中的请求和连接的最佳构建和调度可以提高页面加载时间,并且还可以更好地响应对象优先级的更改。 解决HTTP应用层的多归属和移动性问题。 多归属提供同时使用多个接口,例如改善下载时间的WWAN和WLAN接口,特别是在接口具有相同数量级的可用带宽的情况下。 移动性在设备移动时提供交换连接。 结合起来,它们提供更流畅的移动性。 可以以这种方式提供移动性,无需服务器或网络支持。
    • 20. 发明申请
    • FRAMING FOR AN IMPROVED RADIO LINK PROTOCOL INCLUDING FEC
    • 改进无线链路协议的框架,其中包括FEC
    • US20120207068A1
    • 2012-08-16
    • US13025925
    • 2011-02-11
    • Mark WatsonRamin RezaiifarLorenzo Vicisano
    • Mark WatsonRamin RezaiifarLorenzo Vicisano
    • H04W80/08
    • H04L1/0083H04W28/06
    • Framing techniques for an improved radio link protocol used in a wireless communication system, such as EV-DO. In one embodiment scheduling of the generation of repair symbols encoded to be transmitted along with source data is described. In another embodiment acknowledgment messages from a receiver are used to control the trailing edge of the protection window offered by the repair symbols. In another embodiment, non-acknowledgment messages from a receiver are used to control the generation of extra repair symbols. In another embodiment, a length field is used to avoid transmission of padding bytes over the air. In yet another embodiment, a symbol auxiliary field is appended to source symbols to indicate the padding bytes needed for symbol aligning thus avoiding the transmission of padding bytes over the air.
    • 用于诸如EV-DO的无线通信系统中使用的改进的无线电链路协议的成帧技术。 在一个实施例中,描述了编码为与源数据一起发送的修复符号的生成的调度。 在另一个实施例中,来自接收机的确认消息用于控制由修复符号提供的保护窗口的后沿。 在另一实施例中,来自接收机的非确认消息用于控制额外修复符号的生成。 在另一个实施例中,使用长度字段来避免在空中传输填充字节。 在另一个实施例中,符号辅助字段被附加到源符号以指示符号对齐所需的填充字节,从而避免空中的填充字节的传输。